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Network Service Chaining in Fog and Cloud Computing for the 5G Environment: Data Management and Security Challenges

机译:针对5G环境的雾和云计算中的网络服务链:数据管理和安全挑战

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In the last few years, we have seen an exponential increase in the number of Internet-enabled devices, which has resulted in popularity of fog and cloud computing among end users. End users expect high data rates coupled with secure data access for various applications executed either at the edge (fog computing) or in the core network (cloud computing). However, the bidirectional data flow between the end users and the devices located at either the edge or core may cause congestion at the cloud data centers, which are used mainly for data storage and data analytics. The high mobility of devices (e.g., vehicles) may also pose additional challenges with respect to data availability and processing at the core data centers. Hence, there is a need to have most of the resources available at the edge of the network to ensure the smooth execution of end-user applications. Considering the challenges of future user demands, we present an architecture that integrates cloud and fog computing in the 5G environment that works in collaboration with the advanced technologies such as SDN and NFV with the NSC model. The NSC service model helps to automate the virtual resources by chaining in a series for fast computing in both computing technologies. The proposed architecture also supports data analytics and management with respect to device mobility. Moreover, we also compare the core and edge computing with respect to the type of hypervisors, virtualization, security, and node heterogeneity. By focusing on nodes' heterogeneity at the edge or core in the 5G environment, we also present security challenges and possible types of attacks on the data shared between different devices in the 5G environment.
机译:在过去的几年中,我们看到支持Internet的设备数量呈指数增长,这导致雾和云计算在最终用户中变得越来越流行。最终用户期望在边缘(雾计算)或核心网络(云计算)中执行的各种应用程序具有较高的数据速率和安全的数据访问权限。但是,最终用户与位于边缘或核心的设备之间的双向数据流可能会导致云数据中心出现拥塞,而云数据中心主要用于数据存储和数据分析。设备(例如,车辆)的高移动性还可能在核心数据中心的数据可用性和处理方面带来额外的挑战。因此,需要使大部分资源在网络边缘可用,以确保最终用户应用程序的顺利执行。考虑到未来用户需求的挑战,我们提出了一种在5G环境中集成云和雾计算的架构,该架构可与SDN和NFV等先进技术与NSC模型协同工作。 NSC服务模型通过在一系列计算技术中进行快速计算的一系列链接来帮助自动化虚拟资源。提出的体系结构还支持有关设备移动性的数据分析和管理。此外,我们还针对虚拟机管理程序的类型,虚拟化,安全性和节点异构性对核心和边缘计算进行了比较。通过关注5G环境中边缘或核心节点的异构性,我们还提出了安全挑战以及5G环境中不同设备之间共享的数据可能受到的攻击类型。

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